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Negative capacitance solid state microelectrode input circuit for use in neurophysiology.
1966
S Chamberlain, and G A Kerkut, and R B Venning
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D009482
Neurophysiology
The scientific discipline concerned with the physiology of the nervous system.
Related Publications
S Chamberlain, and G A Kerkut, and R B Venning
A simple circuit to reduce the input capacitance of microelectrode amplifiers.
April 1981, IEEE transactions on bio-medical engineering,
S Chamberlain, and G A Kerkut, and R B Venning
[Automatic compensation for input capacitance in microelectrode studies].
January 1966, Zhurnal vysshei nervnoi deiatelnosti imeni I P Pavlova,
S Chamberlain, and G A Kerkut, and R B Venning
SOLID-STATE ELECTROMETERS WITH INPUT-CAPACITANCE NEUTRALIZATION.
January 1964, IEEE transactions on bio-medical engineering,
S Chamberlain, and G A Kerkut, and R B Venning
Microelectrode amplifier with improved method of input-capacitance neutralisation.
July 1977, Medical & biological engineering & computing,
S Chamberlain, and G A Kerkut, and R B Venning
A low-capacitance multielectrode probe for use in extracellular neurophysiology.
May 1975, IEEE transactions on bio-medical engineering,
S Chamberlain, and G A Kerkut, and R B Venning
Spatially resolved steady-state negative capacitance.
January 2019, Nature,
S Chamberlain, and G A Kerkut, and R B Venning
Examination of the possibility of negative capacitance using ferroelectric materials in solid state electronic devices.
March 2011, Nano letters,
S Chamberlain, and G A Kerkut, and R B Venning
Dual-path capacitance compensation network for microelectrode recordings.
June 1980, The American journal of physiology,
S Chamberlain, and G A Kerkut, and R B Venning
Innovative solid-state microelectrode for nitrite determination in a nitrifying granule.
June 2008, Environmental science & technology,
S Chamberlain, and G A Kerkut, and R B Venning
A new solid-state microelectrode for measuring intracellular chloride activities.
February 1977, Biochimica et biophysica acta,
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